Product Description
Applicable Standards: DIN, EN, ASTM, JIS, GB
Material Grade: S235JR, S235J2, S275JR, S275J2, S355JR, S355J2, A36, SS400, Q235B, Q235D, Q355B, Q355D
Detailed Photos

| LEG ANGLE | |
| Equal Leg Angle | Size Range: Min 20*20*3mm, Weight/m:0.88kg Max 250*250*35mm, Weight/m:128kg |
| Unequal Leg Angle | Size Range: Min 30*20*3mm, Weight/m:1.12kg Max 200*150*15mm, Weight/m: 29.6kg |
| I Profile | |
| IPN | Size Range: IPN80-IPN600, Weight/m: 5.94kg-199kg |
| IPE | Size Range: IPE80-IPE600, Weight/m: 6kg-122kg |
| IPB | Size Range: IPB100-IPB1000, Weight/m: 20.4kg-314kg |


| U Profile | |
| UPE | Size Range: UPE80-UPE400, Weight/m: 7.9kg-72.2kg |
| UPN | Size Range: UPN50-UPN400, Weight/m: 5.59kg-71.8kg |






1.What is a steel I-beam?
I beam is a shape of structural steel used in buildings and it is also known as H, W, wide, universal beam, or rolled joist. They are designed to play a key role as a support member in structures. These beams have the capacity to withstand various types of loads.
2.Are I-beams high carbon steel?
Steel I Beam Shapes
The shape of the flanges and web form an 'I' or 'H '-shaped cross-section. I beams are mostly made from structural steel, although other metals such as aluminium, stainless steel and carbon steel (mild steel) can be used.
3.What material is used for I-beam?
I-Beams are commonly made of structural steel but can be formed out of aluminum. I-beams are most widely used in construction and can have an application for use in both beams as well as columns. Infra-Metals offers many different sizes, lengths, and specifications for I-beams.
4.Why is I-beam used?
I beams are designed to resist bending, vibration, yielding, and reflecting due to their shape. I beams are usually lightweight and can be used for spans of nearly 100 ft. When ordering I beams, buyers will let the fabricator know the dimensions necessary for the project.
5.Which is stronger, H or I-beam?
To short, the main difference between an H-beam and an I-beam is that the web of an H-beam is much thicker than that of an I-beam. A thicker web means a stronger beam, which allows for more load-bearing capacity. This means that for the same amount of structural support, you can use fewer H beams than I beams.



















